Spectroscopy
The use of the absorption, emission, or scattering of electromagnetic radiation by atoms or molecules (or atomic or molecular ions) to qualitatively or quantitatively study the atoms or molecules, or to study physical processes. Virginia Tech
See Also: Dissolved Gas, Terahertz
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Spectroscopy
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Spectrometers are used to measure the properties of light for a variety of applications including environmental or chemical analysis, fluorescence, or Raman. Spectrometers are optical instruments that can detect spectral lines and measure their wavelength or intensity. Spectrometers are ideal for determining compositional makeup for detecting weak light signals. Spectrometers can also be used to test the efficiency of an optical filter in order to determine whether a filter has properly blocked or transmitted specific wavelengths.
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Spectroscopy
Vis-NIR Spectroscopy Lab Analyzers
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Metrohm NIRS lab analyzers enable you to perform routine analysis quickly and with confidence – without requiring sample preparation or additional reagents and yielding results in less than a minute. Combining visible (Vis) and near-infrared (NIR) spectroscopy, these analyzers are capable of performing qualitative analysis of various materials and quantitative analysis of a number of physical and chemical parameters in one run.
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Molecular Spectroscopy Data Systems
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Identify/classify covalently bonded minerals via their mid infrared spectrum - carbonates, sulfates, nitrates, silicates, phosphates, borates, vandates, arsenates, tungstates, molybdates, uranates, hydroxides, oxides, etc
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Raman Spectroscopy Analysis Laboratory
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Rocky Mountain Laboratories, Inc.
Raman is used to analyze organic and inorganic materials. Bulk and small particle materials can be analyzed. Raman microscopy allows for the identification of particle as small as 1 µm.
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Energy Dispersive X-Ray Spectroscopy (EDS)
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Rocky Mountain Laboratories, Inc.
Energy Dispersive Spectroscopy (EDS Analysis) is used in conjunction with the Scanning Electron Microscope (SEM) providing chemical analysis in areas as small as 1 µm in diameter. EDS detects all elements except for H, He, Li, and Be. EDS can be performed exactly on any features or particles seen in the SEM images and can “MAP” elements on a surface. Unknown materials can be identified and quantitative analysis can be performed.
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Energy Dispersive Spectroscopy (EDS) Platform
Octane Elect EDS System
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The Octane Elect EDS System is an enhanced Energy Dispersive Spectroscopy (EDS) platform with the latest advancements in Silicon Drift Detector (SDD) technology and high speed electronics. Tailored for users who demand higher performance and functionality than the options available in entry-level systems, the Octane Elect EDS System provides excellent resolution and high throughput at an optimal value with a remarkable low energy sensitivity for light element detection and low voltage (kV) microanalysis.
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Tunable Diode Laser Absorption Spectroscopy
5100 TDLAS
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The feature-rich 5100 TDLAS offers high-sensitivity, analyte-specific, fast-response measurements for critical industrial applications. It features a single absorption cell and integrated sample system in a compact, cost-effective package.
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Atomic Absorption Spectroscopy Consumables
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Since the atomic absorption spectrophotometer was first launched in 1968, Shimadzu Corporation has remained at the forefront of the world inorganic analysis industry. Shimadzu still maintains an overwhelming market share with highly-regarded products that are selected as the market standard throughout the world. The extensive product range incorporates fully automatic general-purpose systems, a simple and low-cost AA instrument, and a dedicated soil and plant analyzer. They all share great ease-of-use, high functionality, and excellent reliability. Choose Shimadzu to dramatically enhance the productivity and reliability of your laboratory. Shimadzu products will meet all your demands.
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Wavelength Dispersive X-ray Fluorescence Spectroscopy
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Wavelength Dispersive X-ray Fluorescence Spectroscopy
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Custom Spectroscopy Solutions
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Scientific discovery doesn’t always follow traditional pathways. The Optical Spectroscopy Division custom configures spectrometers, monochromators, microspectroscopy, CCD’s and other instruments for fluorescence spectroscopy and other R&D and QC applications. We design systems that meet your individualized research or application needs. We create the tools required to make investigations where standardized tools do not meet your needs or where no tools currently exist.
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Microwave Plasma Atomic Emission Spectroscopy / MP-AES Systems
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Agilent’s industry-leading microwave plasma-atomic emission spectrometer (MP-AES) systems are powerful, cost-efficient and easy-to-use for a wide range of applications from routine analysis to complex precious metals analysis. By running on air, Agilent MP-AES systems both cost less and are safer than alternative methods that rely on flammable gases. The innovative Agilent 4210 MP-AES system offers higher sensitivity and faster throughput capabilities than flame atomic absorption.
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Saturable Spectroscopy Laser Lock Module
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A compact, mechanically-robust laser frequency reference.
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VUV Spectroscopy Detector
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All gas phase molecules absorb strongly in the vacuum ultraviolet region (120 – 240 nm), yet application of VUV absorption technology to routine analytical detection and measurement has not been addressed…until now. The VGA-100 is the world’s first benchtop VUV spectrometer. It is a universal mass-sensitive gas chromatography detector that provides both qualitative and quantitative data. The strong absorption of gas phase molecules in the VUV spectrum provide excellent sensitivity, and the compound-specific absorption spectra provide unparalleled selectivity.
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Infrared, Near Infrared & Raman Spectroscopy
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Our selection of near, mid and far infrared and Raman spectrometers is unrivalled across the industry. Our portfolio includes compact, portable routine as well as powerful research spectrometers. Our solutions cover the entire spectral range from near infrared, mid infrared, far infrared to THz applications.
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Spectroscopy
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The branch of science concerned with the investigation and measurement of spectra produced when matter interacts with or emits electromagnetic radiation.
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Ambient Pressure Photoemission Spectroscopy With Nitrogen Environment
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The APS04-N2-RH incorporates a tuneable deep ultra-violet (UV) source outputting 3.4 - 7.0 eV, for absolute work function and highest occupied molecular orbital (HOMO) measurements, a surface photovoltage spectroscopy (SPS) module outputting 400 - 1000 nm for Voc and Eg measurements, together with a 50 x 50 mm scanning area for planar relative work function measurements (Fermi level).
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Alpha Spectroscopy
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Alpha spectroscopy is used to identify and quantify radionuclides based on the alpha particles emitted in the decay process. Similar to Gamma Spectroscopy, energy spectra are generated with high precision detectors and electronics and analyzed with special software. Typically, samples are measured following chemical separation to isolate the radionuclides of concern due to the complexity associated with correcting for these interferences with spectrum analysis software as is common for many Gamma Spectroscopy measurements.
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Raman Spectroscopy
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Raman is a spectroscopic technique that uses laser light to interact with molecular excitations and determine what a substance or element is composed of. It relies upon the inelastic scattering of photons which produces a weak signal, making the collection of information challenging particularly when the substance to be measured is at distance or can only be given short exposure times. Our Raman spectrometers are particularly effective at making Raman measurements due to their configuration which delivers a higher throughput/etendue than standard instruments.
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Operando Spectroscopy
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The operando cells, designed to interface with certain IR and Raman spectrometers, enable study of electrode surfaces during normal operation. Choose between the "fuel cell" and "solid electrode" configurations. These custom - designed tools can help your research lab understand how materials behave under operation.
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Portable Functional Near-Infrared Spectroscopy System For Research
LIGHTNIRS
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Shimadzu Portable functional Near-Infrared Spectroscopy (fNIRS) System for Research* Near infrared light, which readily diffuses easily through biological tissue, can be used to measure localized blood oxygenation levels of the brain to monitor where activity occurs in response to a task of stimulus. The portability of LIGHTNIRS allows visualizing brain function activity in real time in a more natural state than other methods. Consequently, it is being used in a wide range of applications including medical research, developmental psychology, education, cognitive science and engineering.
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Spectroscopy Card
microDXP
Instrument Card
The microDXP is a complete, low power compact digital spectroscopy card design for a wide range of handheld, benchtop and other embedded applications, lowering cost and speeding time-to-market.
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Spectroscopy
NIRS XDS Process Analyzer
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NIRS XDS Process Analyzer systems can measure a variety of sample types, such as granules, powders, liquids, slurries, or opalescent substances, among others. These analyzers provide fast, nondestructive analysis of pharmaceutical, chemical, and petrochemical products. If required, up to 9 inline measuring channels can be multiplexed with this system.
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Spectroscopy, Elemental & Isotope Analysis
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Research, production and analytical laboratories worldwide rely on us for rapid, efficient qualitative and quantitative analysis. Our innovative instruments and user-friendly software serve a range of industrial, educational, environmental and health markets. We offer a comprehensive portfolio for the quantification and identification of trace elemental species at ppm to sub-ppt levels in addition to isotopes. We also provide a wide range of lab-based and handheld instruments employing analytical techniques including XRF, FTIR, NIR, Raman spectroscopy, IRMS, ICP-MS and more.
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Auger Electron Spectroscopy (AES)
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Rocky Mountain Laboratories, Inc.
Auger Analysis, Auger Electron Spectroscopy (AES or Auger) is a chemical surface analysis method. AES measures the chemical composition of the outermost 100 Å of a sample. Measurements can be made at greater depths by ion sputter etching to remove surface layers.





























